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Numerical technique for modeling conjugate heat transfer in an electronic device heat sink

机译:电子设备散热器中共轭传热建模的数值技术

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摘要

A fast running computational algorithm based on the volume averaging technique (VAT) is developed to simulate conjugate heat transfer process in an electronic device heat sink. The goal is to improve computational capability in the area of heat exchangers and to help eliminate some of empiricism that leads to overly constrained designs with resulting economic penalties. VAT is tested and applied to the transport equations of airflow through an aluminum (Al) chip heat sink. The equations are discretized using the finite volume method (FVM). Such computational algorithm is fast running, but still able to present a detailed picture of temperature fields in the airflow as well as in the solid structure of the heat sink. The calculated whole-section drag coefficient, Nusselt number and thermal effectiveness are compared with experimental data to verify the computational model and validate numerical code. The comparison also shows a good agreement between FVM results and experimental data. The constructed computational algorithm enables prediction of cooling capabilities for the selected geometry. It also offers possibilities for geometry improvements and optimization, to achieve higher thermal effectiveness.
机译:开发了一种基于体积平均技术(VAT)的快速运行计算算法,以模拟电子设备散热器中的共轭传热过程。目的是提高热交换器领域的计算能力,并帮助消除一些经验主义,这些经验主义导致设计受到过度限制,从而导致经济损失。对增值税进行了测试,并将其应用于通过铝(Al)芯片散热器的气流传输方程。使用有限体积法(FVM)将方程离散化。这种计算算法运行速度很快,但是仍然能够显示气流以及散热器的固体结构中温度场的详细情况。将计算得到的全截面阻力系数,努塞尔数和热效率与实验数据进行比较,以验证计算模型并验证数字代码。比较还显示FVM结果与实验数据之间有很好的一致性。构造的计算算法可以预测所选几何形状的冷却能力。它还提供了几何形状改进和优化的可能性,以实现更高的热效率。

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